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Detection of proteins cross-linked within galactoside polyacrylate-based hydrogels by means of a quantum dot fluororeagent.

作者信息

Goldman Ellen R, O'Shaughnessy Thomas J, Soto Carissa M, Patterson Charles H, Taitt Chris R, Spector Mark S, Charles Paul T

机构信息

U.S. Naval Research Laboratory, Center for Bio/Molecular Science and Engineering, Washington, DC 20375, USA.

出版信息

Anal Bioanal Chem. 2004 Dec;380(7-8):880-6. doi: 10.1007/s00216-004-2850-4. Epub 2004 Nov 13.

Abstract

Protein toxins have been immobilized in a galactoside polyacrylate hydrogel in a microarray format. The large pore size and solution-like environment of these novel hydrogels allow for easy penetration of large proteins and detection reagents. Confocal microscopy provided three-dimensional visualization of dye-labeled toxins cross-linked within the gel and of streptavidin-coated quantum dot (QD) fluorophores used to visualize the toxins after incubation with biotinylated anti-toxin antibodies. Fluorescence microscopy was utilized to visualize arrays of toxins detected by a biotinylated antibody and then exposure to streptavidin-conjugated QDs. The intensity of the QD fluorescence was quantified, and binding to two toxins on three types of hydrogels was examined.

摘要

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